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稀释率和浓缩物停留时间对Rusitec发酵罐中微生物生长效率、甲烷产生及瘤胃发酵的影响。

Effects of dilution rate and retention time of concentrate on efficiency of microbial growth, methane production, and ruminal fermentation in Rusitec fermenters.

作者信息

Martínez M E, Ranilla M J, Ramos S, Tejido M L, Carro M D

机构信息

Departamento de Producción Animal, Universidad de León, 24007 León, Spain.

出版信息

J Dairy Sci. 2009 Aug;92(8):3930-8. doi: 10.3168/jds.2008-1975.

Abstract

The objective of this study was to investigate the effects of 2 dilution rates (DL) and 2 concentrate retention times (RT) on microbial growth, methane production, and fermentation of a 30:70 alfalfa hay:concentrate diet in Rusitec fermenters maintained at similar pH. The DL were 3.78 (low DL, LDL) and 5.42%/h (high DL, HDL), and concentrate RT was either 24 h (T24) or 48 h (T48). Forage RT was 48 h in all fermenters. Apparent disappearance of diet DM and NDF was greater in HDL fermenters compared with LDL fermenters, but there was a significant DL x concentrate RT interaction, showing that the effect of DL was more pronounced in T48 compared with T24 fermenters. Methane production was not affected by DL, but was greater in T48 compared with T24 fermenters, which was consistent with the increased fiber degradation in T48 fermenters. Increasing DL augmented volatile fatty acid production and molar proportions of propionate, isovalerate, and valerate, and reduced those of caproate, but no effects were observed on acetate, butyrate, and isobutyrate proportions. Increasing concentrate RT resulted in greater volatile fatty acid production and proportions of acetate, butyrate, and caproate, but reduced those of propionate, valerate, and isovalerate. Ammonia-N production was not affected by concentrate RT, but was greater at HDL compared with LDL. Microbial growth was not affected by DL, but microbial growth efficiency was lower in HDL compared with LDL fermenters. Concentrate RT affected microbial growth and its efficiency, with both being greater in T48 compared with T24 fermenters. Carboxymetylcellulase and xylanase activities in ruminal fluid were greater in HDL compared with LDL fermenters, but were not affected by concentrate RT. There were DL x concentrate RT interactions for diet apparent disappearance, molar proportions of propionate, butyrate, isovalerate, and caproate, and acetate:propionate ratio, indicating that effects of DL on these variables were influenced by concentrate RT. The results would indicate that using higher DL and shorter concentrate RT than those typically used in Rusitec fermenters would contribute to improving the simulation of in vivo fermentation of high-concentrate diets.

摘要

本研究的目的是调查在保持相似pH值的瘤胃模拟体外发酵系统(Rusitec)发酵罐中,2种稀释率(DL)和2种浓缩物保留时间(RT)对30:70苜蓿干草:浓缩物日粮的微生物生长、甲烷产生和发酵的影响。稀释率分别为3.78(低稀释率,LDL)和5.42%/小时(高稀释率,HDL),浓缩物保留时间为24小时(T24)或48小时(T48)。所有发酵罐中的草料保留时间均为48小时。与LDL发酵罐相比,HDL发酵罐中日粮干物质(DM)和中性洗涤纤维(NDF)的表观消失量更大,但存在显著的稀释率×浓缩物保留时间交互作用,表明与T24发酵罐相比,稀释率在T48发酵罐中的影响更为明显。甲烷产生不受稀释率的影响,但与T24发酵罐相比,T48发酵罐中的甲烷产生量更大,这与T48发酵罐中纤维降解增加一致。增加稀释率可提高挥发性脂肪酸的产生以及丙酸、异戊酸和戊酸的摩尔比例,并降低己酸的摩尔比例,但对乙酸、丁酸和异丁酸的比例没有影响。增加浓缩物保留时间会导致挥发性脂肪酸产生量增加以及乙酸、丁酸和己酸的比例增加,但会降低丙酸、戊酸和异戊酸的比例。氨氮产生不受浓缩物保留时间的影响,但与LDL相比,HDL中的氨氮产生量更大。微生物生长不受稀释率的影响,但与LDL发酵罐相比,HDL发酵罐中的微生物生长效率较低。浓缩物保留时间影响微生物生长及其效率,与T24发酵罐相比,T48发酵罐中的微生物生长和效率均更高。与LDL发酵罐相比,HDL发酵罐中瘤胃液中的羧甲基纤维素酶和木聚糖酶活性更高,但不受浓缩物保留时间的影响。日粮表观消失量、丙酸、丁酸、异戊酸和己酸的摩尔比例以及乙酸:丙酸比值存在稀释率×浓缩物保留时间交互作用,表明稀释率对这些变量的影响受浓缩物保留时间的影响。结果表明,使用比Rusitec发酵罐中通常使用的更高的稀释率和更短的浓缩物保留时间将有助于改善高浓缩日粮体内发酵的模拟。

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